首页> 美国卫生研究院文献>Nucleic Acids Research >Resistance of mRNAs with AUG-proximal nonsense mutations to nonsense-mediated decay reflects variables of mRNA structure and translational activity
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Resistance of mRNAs with AUG-proximal nonsense mutations to nonsense-mediated decay reflects variables of mRNA structure and translational activity

机译:具有AUG近端无义突变的mRNA对无义介导的衰变的抗性反映了mRNA结构和翻译活性的变量

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摘要

Nonsense-mediated mRNA decay (NMD) is a surveillance pathway that recognizes and selectively degrades mRNAs carrying premature termination codons (PTCs). The level of sensitivity of a PTC-containing mRNA to NMD is multifactorial. We have previously shown that human β-globin mRNAs carrying PTCs in close proximity to the translation initiation AUG codon escape NMD. This was called the ‘AUG-proximity effect’. The present analysis of nonsense codons in the human α-globin mRNA illustrates that the determinants of the AUG-proximity effect are in fact quite complex, reflecting the ability of the ribosome to re-initiate translation 3′ to the PTC and the specific sequence and secondary structure of the translated ORF. These data support a model in which the time taken to translate the short ORF, impacted by distance, sequence, and structure, not only modulates translation re-initiation, but also impacts on the exact boundary of AUG-proximity protection from NMD.
机译:无意义介导的mRNA衰变(NMD)是一种监视途径,可识别并选择性降解携带过早终止密码子(PTC)的mRNA。含PTC的mRNA对NMD的敏感性水平是多因素的。先前我们已经表明,携带PTC的人β-珠蛋白mRNA紧密靠近翻译起始AUG密码子逃逸NMD。这就是所谓的“ AUG邻近效应”。目前对人α-珠蛋白mRNA中无意义密码子的分析表明,AUG邻近效应的决定因素实际上非常复杂,反映了核糖体重新启动3'到PTC的翻译以及特定序列的能力。翻译的ORF的二级结构。这些数据支持一个模型,在该模型中,翻译短ORF所花费的时间受距离,序列和结构的影响,不仅调节翻译重新初始化,而且还影响到来自NMD的AUG邻近保护的确切边界。

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